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101 results on '"Peter Igarashi"'

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1. Multiomics analysis reveals that hepatocyte nuclear factor 1β regulates axon guidance genes in the developing mouse kidney

2. microRNA-17 family promotes polycystic kidney disease progression through modulation of mitochondrial metabolism

3. The role for HNF-1beta-targeted collectrin in maintenance of primary cilia and cell polarity in collecting duct cells.

4. Small hairpin inhibitory RNA delivery in the metanephric organ culture identifies long noncoding RNA Pvt1 as a modulator of cyst growth

5. Framework From a Multidisciplinary Approach for Transitioning Variants of Unknown Significance From Clinical Genetic Testing in Kidney Disease to a Definitive Classification

6. Innate Immune Signaling Contributes to Tubular Cell Senescence in the Glis2 Knockout Mouse Model of Nephronophthisis

7. Advancing Nephrology: Division Leaders Advise ASN

8. Hepatocyte nuclear factor 1β suppresses canonical Wnt signaling through transcriptional repression of lymphoid enhancer-binding factor 1

9. Interstitial microRNA miR-214 attenuates inflammation and polycystic kidney disease progression

10. Activated renal tubular Wnt/β-catenin signaling triggers renal inflammation during overload proteinuria

11. Long noncoding RNA Hoxb3os is dysregulated in autosomal dominant polycystic kidney disease and regulates mTOR signaling

12. Hepatocyte Nuclear Factor–1β Regulates Urinary Concentration and Response to Hypertonicity

13. Hepatocyte nuclear factor-1β regulates Wnt signaling through genome-wide competition with β-catenin/lymphoid enhancer binding factor

14. microRNA-17 family promotes polycystic kidney disease progression through modulation of mitochondrial metabolism

15. Loss of Glis2/NPHP7 causes kidney epithelial cell senescence and suppresses cyst growth in the Kif3a mouse model of cystic kidney disease

16. Renal tubular cell spliced X-box binding protein 1 (Xbp1s) has a unique role in sepsis-induced acute kidney injury and inflammation

17. Mechanism of Fibrosis in HNF1B-Related Autosomal Dominant Tubulointerstitial Kidney Disease

18. New insights into the role of HNF-1β in kidney (patho)physiology

19. Long noncoding RNA

20. Zyxin regulates migration of renal epithelial cells through activation of hepatocyte nuclear factor-1β

21. miR-17∼92 miRNA cluster promotes kidney cyst growth in polycystic kidney disease

22. Adenylyl cyclase 5 deficiency reduces renal cyclic AMP and cyst growth in an orthologous mouse model of polycystic kidney disease

23. Loss of transcriptional activation of the potassium channel Kir5.1 by HNF1β drives autosomal dominant tubulointerstitial kidney disease

24. Generation and characterization of KsprtTA and KsptTA transgenic mice

25. Hepatocyte Nuclear Factor-1

26. Targeted inactivation of fh1 causes proliferative renal cyst development and activation of the hypoxia pathway

27. Tubule-specific ablation of endogenous β-catenin aggravates acute kidney injury in mice

28. Increased hedgehog signaling in postnatal kidney results in aberrant activation of nephron developmental programs

29. A mitotic transcriptional switch in polycystic kidney disease

30. Collecting duct-specific Rh C glycoprotein deletion alters basal and acidosis-stimulated renal ammonia excretion

31. Basolateral expression of the ammonia transporter family member Rh C glycoprotein in the mouse kidney

32. Multiple renal cysts, urinary concentration defects, and pulmonary emphysematous changes in mice lacking TAZ

33. Mutations of HNF-1β inhibit epithelial morphogenesis through dysregulation of SOCS-3

34. Transcription Factor Hepatocyte Nuclear Factor–1β Regulates Renal Cholesterol Metabolism

35. Transcription Factor Hepatocyte Nuclear Factor-1β (HNF-1β) Regulates MicroRNA-200 Expression through a Long Noncoding RNA*

36. Proteolytic Cleavage and Nuclear Translocation of Fibrocystin Is Regulated by Intracellular Ca2+ and Activation of Protein Kinase C

37. Expression of the basolateral Na–K–Cl cotransporter during mouse nephrogenesis and embryonic development

38. Roles of HNF-1β in kidney development and congenital cystic diseases

39. Intrarenal cells, not bone marrow–derived cells, are the major source for regeneration in postischemic kidney

40. Cystic Renal Neoplasia Following Conditional Inactivation of Apc in Mouse Renal Tubular Epithelium

41. Loss of NFAT5 results in renal atrophy and lack of tonicity-responsive gene expression

42. Regulation of kidney-specific Ksp-cadherin gene promoter by hepatocyte nuclear factor-1β

43. Filling the holes in cystic kidney disease research

44. Tissue-specific regulation of the mouse Pkhd1 (ARPKD) gene promoter

45. Uncompensated polyuria in a mouse model of Bartter's syndrome

46. The basic-helix-loop-helix protein Pod1 is critically important for kidney and lung organogenesis

47. Ksp-cadherin gene promoter. I. Characterization and renal epithelial cell-specific activity

48. Sex Steroids Mediate HOXA11 Expression in the Human Peri-Implantation Endometrium1

49. Polycystic Kidney Disease

50. HOXA10 is expressed in response to sex steroids at the time of implantation in the human endometrium

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